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MOLECULAR MECHANISM OF HOST MEDIATED VARIATION OF INFLUENZA VIRUSES AND ITS CONTROL

MOLECULAR MECHANISM OF HOST MEDIATED VARIATION OF INFLUENZA VIRUSES AND ITS CONTROL
流感病毒宿主介导变异的分子机制及其防治
批准号:
10470081
负责人:
SUZUKI Yasuo
金额:
$8.38万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B).
财政年份:
1998
资助国家:
日本
项目状态:
已结题
起止时间:
1998 至 2000

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中文摘要
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英文摘要
Following findings were obtained during the two project years.1)Not only host antibody pressure, but also host cell receptor sialo sugar chains cause a selective pressure for the appearance of host cell variants with alterted receptor binding specificities which may have the ability to transmit from animals to humans.2)This host range selection is processed by host cell receptor level, because the change of the receptor binding specificity (Neu5Ac2-6Gal→Neu5Ac2-3Gal) appeares as the substitution of the amino acid (Leu226→Gln) located in the receptor binding pocket of the viral hemagglutinin, and the other change of the receptor binding specificity (alteration of the recognition to the molecular species of sialic acid, Neu5Ac2-3Gal→Neu5Gc2-3Gal) also occurres by the single amino acid substitution (Ser228→Gly) located in the potential receptor binding pocket.3) Epitherial cells in pig trachea has receptor sialosugar chains that binds both of bird and human influenza A viruses (Neu5Ac2-6G … More al for humans and Neu5Ac2-3Gal for birds). These results indicate that pig may play as a mixing vessel of human and bird influenza viruses in nature. The host range selection of the receptor binding specificity of the A virus hemagglutinin occurrs during the maintenance of the virus in different host cells which express different receptor sialo-sugar chains.5) It was found that some non-sialyl sugar chains are effective to bind to influenza viruses isolated from human, avian, and swine hosts. These results indicate that these glycolipids have a function as the second common receptor molecule for human and animal influenza viruses.6) The above new results show that the molecular mechanism of the transmission of the influenza viruses among the animals is deeply related to the recognition to the receptor sialosugar chains (sialyl linkage, 2-3, 2-6 ; and molecular species of sialic acid, Neu5Ac, Neu5Gc). Therefore, the aim of this project, the elucidation of the mechanism of host range variation and emerging of the new subtype of the hemagglutinin and neuraminidase of influenza viruses is satisfactory progressed. Less
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osaka,Y.: "Binding of influenza and paramyxoviruses to group B Streptococcus with the terminal sialyl-galactose linkage. ,169-174(1998)." J.Electron Microscopy. 47(2). 169-174 (1998)
osaka,Y.:“流感病毒和副粘病毒通过末端唾液酸半乳糖键与 B 族链球菌结合。,169-174(1998)。”
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通讯作者:
鈴木康夫: "微生物学実習提要(東京大学医科学研究所学友会編、丸善)" ウイルスの酵素活性測定,ノイラミニダーゼ, 214-215 (1998)
铃木康夫:《微生物学实践概要(东京大学医学科学研究所校友会丸善编)》病毒的酶活性测定、神经氨酸酶,214-215(1998)
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Ikeda,K.: "Chemoenzymaticsynthesis of an N-acetylneuraminic acid analogue having a carbamoylmethylgroup at C-4 as an inhibitor of sialidase from influenza virus." Carbohydrate Res.312. 183-189 (1998)
Ikeda,K.:“化学酶法合成在 C-4 处具有氨基甲酰甲基的 N-乙酰神经氨酸类似物作为流感病毒唾液酸酶的抑制剂。”
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通讯作者:
Suzuki, Y.: "Sialic acid species as a determinant of the host range of influenza A viruses"J.Virol.. 74(24). 11825-11831 (2000)
Suzuki, Y.:“唾液酸种类是甲型流感病毒宿主范围的决定因素”J.Virol.. 74(24)。
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62
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